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The electrochemical and weight loss measurements were made to find the corrosion behavior of composite coating.
A continuous lubricating layer including NiTiO3 and Al2TiO5 was formed on counterfaces, which further improved the tribological behavior of composite coating at high temperatures.
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Fouling behaviors of the surface of composite coating in the simulated geothermal water were studied in comparison with stainless steel and epoxy-silicone resin coating.
In this paper, structural formation, mechanical and thermal stability behavior of developed composite coating of Zn-30Al-7%Ti/Sn chloride bath and Zn-30Al-7%Ti/Sn sulphate bath was investigated and compared to provide mitigation against failure.
The microstructure, phase composition and high temperature tribological behavior of the composite coating were analyzed by SEM, EDS, XRD and ball-on-disc abrasive tests.
The microstructure, microhardness and dry-sliding wear behavior of the composite coating were investigated using optical micrograph (OM), X-ray diffraction (XRD), scanning electron micrograph (SEM), energy dispersive X-ray analysis (EDS), microhardness tester and ring-on-ring wear tester.
Hot corrosion behavior of the composite coating in the molten Na2SO4 + K2SO4 at 650 °C was investigated by the weight change kinetics, X-ray diffraction (XRD), scanning electron microscopy (SEM) as well as energy dispersive X-ray spectroscopy (EDS).
The tribological behavior of the composite coating from 25 °C to 800 °C was performed in air with a ball-on-disk tribometer against Si3N4 ball counterfaces and a dual-mode three-dimensional surface profiler.
The dry sliding wear behavior of the composite coating was assessed by using a ball-on-disc tribometer at various loads (9.8, 19.6, 29.4 and 39.2 N) and sliding speeds (0.052, 0.104 and 0.156 m/s).
Micro- and nano-sized SiC particles were codeposited with nickel by electrolytic plating from a nickel sulfamate bath and the effects of plating parameters such as pH of the plating bath, SiC content in the plating bath, and stirring speed on the deposition behaviors of Ni SiC composite coating layers were studied.
And the friction and wear behavior of the POB/CuAl composite coating was evaluated and compared with that of pure aluminum bronze coating and AISI-E52100 bearing steel on a ball-on-disc reciprocal tribometer.
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